Propagating patterns are used to transfer and process information in chemical and physical prototypes of unconventional computing devices. Logical values are represented by fronts of traveling diffusive, trigger or phase waves. We apply this concept of pattern based computation to develop experimental prototypes of computing circuits implemented in small modular robots. In the experimental prototypes the modular robots Cubelets are concatenated into channels and junction. The structures developed by Cubelets propagate signals in parallel and asynchronously. The approach is illustrated with a working circuit of a one-bit full adder. Complementarily a formalization of these constructions are developed across Sleptsov nets. Finally, a perspective to swarm dynamics is discussed.
翻译:在非常规计算装置的化学和物理原型中,传播和处理信息时使用传播模式;逻辑值由移动的diffusive、触发或相波的前沿代表;我们应用这种基于模式的计算概念来开发在小型模块机器人中实施的计算电路的实验原型;在实验原型中,模块式机器人立方体被连接到通道和交汇处;Cublets开发的结构平行和不同步地传播信号;该方法用一位全添加器的工作电路加以说明;同时在Sleptsov网中开发了这些构造的正规化;最后,讨论了电流动态的视角。